Effect of Growth Period on Cell Wall Mechanical Properties of Elephant Grass

文献类型: 外文期刊

第一作者: Zhang, Yang

作者: Zhang, Yang;Yang, Rui;Wu, Yan;Liu, Cong;Zhang, Yang;Wu, Yan;Wang, Siqun;Liu, Cong;Zhong, Xiaoxian;Wu, Juanzi

作者机构:

关键词: Elephant grass;Growth age;Mechanical properties;Cell wall

期刊名称:BIORESOURCES ( 影响因子:1.614; 五年影响因子:1.923 )

ISSN: 1930-2126

年卷期: 2015 年 10 卷 3 期

页码:

收录情况: SCI

摘要: Elephant grass (Pennisetum purpureum Schum.) is a fast-growing native African plant species that produces commercially useful lignocellulosic biomass. It has been used in many countries to replace wood for paper, particleboard, and fiberboard. There is a close relationship between the mechanical properties of elephant grass cell walls and the performance of its products. The objective of this research was to investigate the cell wall mechanical properties at different growth periods of five types of elephant grasses, i.e., P. americanum cv. Tift 23AxP. purpureum cv. Tift N51 (HP), P. purpureum cv. Tift N51 (N51), P. purpureum cv. Huanan (Huanan), P. purpureum cv. Sumu No. 2 (Sumu-2), and (P. americanumx P. purpureum) x P. purpureum cv. Guimu No. 1 (Guimu-1). The hardness and elastic modulus of the cell walls were investigated by means of nanoindentation. The results showed that the hardness and elastic modulus of these elephant grasses increased as growth period increased. However, the rate of increase varied for the different types of elephant grass, which could help guide the evaluation of the properties of this kind of bio-fiber resource for the production of high-quality biocomposite products.

分类号:

  • 相关文献

[1]Preliminary evaluation of five elephant grass cultivars harvested at different time for sugar production. Li, Yuanyuan,Zhang, Yelong,Zheng, Hongbo,Zhang, Hongman,Du, Jian,Huang, He,Wu, Juanzi. 2015

[2]Root distribution and nutrient uptake in crop-forage systems on Andean hillsides. Zhiping, Q,Rao, IM,Ricaurte, J,Amezquita, E,Sanz, JI,Kerridge, PC. 2004

[3]Copper tolerance of the biomass crops Elephant grass (Pennisetum purpureum Schumach), Vetiver grass (Vetiveria zizanioides) and the upland reed (Phragmites australis) in soil culture. Liu, Xinghua,Lou, Laiqing,Cai, Qingsheng,Shen, Yixing,Ding, Chenglong.

[4]Overexpression of OsPIL15, a phytochromeinteracting factor- like protein gene, represses etiolated seedling growth in rice. Zhou, Jinjun,Liu, Qianqian,Wang, Yingying,Zhang, Shiyong,Cheng, Huimin,Yan, Lihua,Li, Li,Xie, Xianzhi,Zhou, Jinjun,Wang, Yingying,Zhang, Shiyong,Xie, Xianzhi,Liu, Qianqian,Xie, Xianzhi,Zhang, Fang,Chen, Fan. 2014

[5]A Cotton BURP Domain Protein Interacts With -Expansin and Their Co-Expression Promotes Plant Growth and Fruit Production. Bing Xu,Jin-Ying Gou,Fu-Guang Li,Xiao-Xia Shangguan,Bo Zhao,Chang-Qing Yang,LingJian Wang,Sheng Yuan,Chang-Jun Liu,Xiao-Ya Chen. 2013

[6]THE EFFECTS OF EXTRACELLULAR CALMODULIN ON CELL-WALL REGENERATION OF PROTOPLASTS AND CELL-DIVISION. SUN, DY,BIAN, YQ,ZHAO, BH,ZHAO, LY,YU, XM,SHENGJUN, D. 1995

[7]RNA-Seq-Based Transcriptome Profiling of Early Nitrogen Deficiency Response in Cucumber Seedlings Provides New Insight into the Putative Nitrogen Regulatory Network. Zhao, Wenchao,Yang, Xueyong,Yu, Hongjun,Jiang, Weijie,Sun, Na,Liu, Xiaoran,Liu, Xiaolin,Zhang, Xiaomeng,Wang, Yan,Gu, Xingfang,Zhao, Wenchao.

[8]High-level hemicellulosic arabinose predominately affects lignocellulose crystallinity for genetically enhancing both plant lodging resistance and biomass enzymatic digestibility in rice mutants. Li, Fengcheng,Zhang, Mingliang,Guo, Kai,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Wu, Changyin,Xie, Guosheng,Peng, Liangcai,Li, Fengcheng,Zhang, Mingliang,Guo, Kai,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Wu, Changyin,Xie, Guosheng,Peng, Liangcai,Li, Fengcheng,Zhang, Mingliang,Guo, Kai,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Xie, Guosheng,Peng, Liangcai,Li, Fengcheng,Zhang, Mingliang,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Xie, Guosheng,Peng, Liangcai,Guo, Kai,Wu, Changyin,Tian, Jinshan,Lu, Tiegang.

[9]Expansins: roles in plant growth and potential applications in crop improvement. Marowa, Prince,Ding, Anming,Kong, Yingzhen.

[10]Analysis of 2,297 expressed sequence tags (ESTs) from a cDNA library of flax (Linum ustitatissimum L.) bark tissue. Li, Xiang,Chen, Xin-Bo,Long, Song-Hua,Deng, Xin,Wang, Yu-Fu,Qiao, Rui-Qing,Qiu, Cai-Sheng,Guo, Yuan,Hao, Dong-Mei,Jia, Wan-Qi.

[11]Novel roles of hydrogen peroxide (H2O2) in regulating pectin synthesis and demethylesterification in the cell wall of rice (Oryza sativa) root tips. Xiong, Jie,Yang, Yongjie,Fu, Guanfu,Tao, Longxing,Xiong, Jie.

[12]Effects of calcium treatment and low temperature storage on cell wall polysaccharide nanostructures and quality of postharvest apricot (Prunus armeniaca). Liu, Hui,Jiao, Zhonggao,Chen, Fusheng,Lai, Shaojuan,Lai, Shaojuan,Tao, Junrui,Yang, Hongshun,Tao, Junrui,Yang, Hongshun.

[13]Lignification of Sheepgrass Internodes at Different Developmental Stages and Associated Alteration of Cell Wall Saccharification Efficiency. Wang, Jianli,Shen, Zhongbao,Sun, Dequan,Zhang, Hailing,Wang, Jianli,Ma, Lichao,Bai, Zetao,Zhang, Hailing,Cao, Yingping,Bao, Yan,Fu, Chunxiang,Ma, Lichao,Bai, Zetao,Cao, Yingping,Bao, Yan,Fu, Chunxiang,Zhong, Peng. 2017

[14]Copper accumulation and tolerance in Chrysanthemum coronarium L. and Sorghum sudanense L.. Wei, Lan,Shen, Zhenguo,Wei, Lan,Luo, Chunling,Li, Xiangdong.

[15]Hydrogen Sulfide Alleviates Aluminum Toxicity via Decreasing Apoplast and Symplast Al Contents in Rice. Zhu, Chun Q.,Zhang, Jun H.,Zhu, Lian F.,Zhong, Chu,Bai, Zhi G.,Sajid, Hussain,Cao, Xiao C.,Jin, Qian Y.,Sun, Li M.,Abliz, Buhailiqem,Hu, Wen J.. 2018

[16]Roles of nitric oxide in alleviating heavy metal toxicity in plants. Xiong, Jie,Fu, Guanfu,Tao, Longxing,Zhu, Cheng.

[17]Cell wall polysaccharide distribution in Miscanthus lutarioriparius stem using immuno-detection. Cao, Yingping,Li, Junling,Yu, Li,Chai, Guohua,He, Guo,Hu, Ruibo,Qi, Guang,Fu, Chunxiang,Zhou, Gongke,Kong, Yingzhen. 2014

[18]Genetic and Quantitative Trait Locus Analysis of Cell Wall Components and Forage Digestibility in the Zheng58 x HD568 Maize RIL Population at Anthesis Stage. Li, Kun,Wang, Hongwu,Hu, Xiaojiao,Ma, Feiqian,Wu, Yujin,Wang, Qi,Liu, Zhifang,Huang, Changling. 2017

[19]Biomass digestibility is predominantly affected by three factors of wall polymer features distinctive in wheat accessions and rice mutants. Wu, Zhiliang,Zhang, Mingliang,Wang, Lingqiang,Tu, Yuanyuan,Zhang, Jing,Xie, Guosheng,Zou, Weihua,Li, Fengcheng,Guo, Kai,Li, Qing,Peng, Liangcai,Wu, Zhiliang,Zhang, Mingliang,Wang, Lingqiang,Tu, Yuanyuan,Zhang, Jing,Xie, Guosheng,Zou, Weihua,Li, Fengcheng,Guo, Kai,Li, Qing,Peng, Liangcai,Wu, Zhiliang,Zhang, Mingliang,Wang, Lingqiang,Tu, Yuanyuan,Zhang, Jing,Xie, Guosheng,Zou, Weihua,Li, Fengcheng,Peng, Liangcai,Guo, Kai,Li, Qing,Gao, Chunbao. 2013

[20]Evolution, gene expression profiling and 3D modeling of CSLD proteins in cotton. Li, Yanpeng,Yang, Tiegang,Dai, Dandan,Hu, Ying,Guo, Xiaoyang,Guo, Hongxia,Li, Yanpeng,Yang, Tiegang,Dai, Dandan,Hu, Ying,Guo, Xiaoyang,Guo, Hongxia. 2017

作者其他论文 更多>>